Lawrence Livermore National Laboratory (LLNL) scientists have paired 3-D-printed, living human brain vasculature with advanced computational flow simulations to better understand tumor cell attachment to blood vessels, the first step in secondary tumor formation during cancer metastasis. The unique approach, developed with outside collaborators, lays the foundation for developing a predictive capability that can help
The human liver is a vital organ involved in multiple functions. Because susceptibility to liver diseases is highly variable among patients, researchers from Tokyo Medical and Dental University (TMDU) and Cincinnati Children’s Hospital Medical Center (CCHMC) have engineered a model liver system that can be personalized for disease modeling and drug discovery. In a study
Starting this summer, physicians at UC Davis Health will be able to use a powerful new scanner that can render detailed, 3-D images of the inner workings of the entire human body in as little as one minute, the creators of the device announced recently. UCD researchers Ramsey Badawi and Simon Cherry said the sophisticated
Using Magnetic Resonance Imaging (MRI), scientists have captured 3-D images that show how infants’ brains and skulls change shape as they move through the birth canal just before delivery. Olivier Ami of Auvergne University in Clermont Ferrand, France, and colleagues present these findings in the open access journal PLOS ONE on May 15, 2019. Doctors
Working with hundreds of time-lapse videos of mouse tissue, a team of biologists joined up with civil engineers to create what is believed to be the first 3-D computer model to show precisely how the tiny tubes that funnel milk through the breasts of mammals form. A report on the model was published April 9
Novel stem-cell technology developed at Swinburne will be used to grow the massive number of stem cells required for a new hand-held 3-D printer that will enable surgeons to create patient-specific bone and cartilage. The technology, called BioSphere, is being developed in collaboration with St Vincent’s Hospital in Melbourne to support the development of Biopen.
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